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由一台高功率锁模厄米高斯激光器产生的高达30阶的高阶飞秒涡旋。

High-order femtosecond vortices up to the 30th order generated from a powerful mode-locked Hermite-Gaussian laser.

作者信息

Liu Hongyu, Yan Lisong, Chen Hongshan, Liu Xin, Liu Heyan, Chew Soo Hoon, Gliserin Alexander, Wang Qing, Zhang Jinwei

机构信息

School of Optical and Electronic Information and Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan, 430074, China.

Department of Optics and Mechatronics Engineering, College of Nanoscience and Nanotechnology, Pusan National University, Busan, 46241, South Korea.

出版信息

Light Sci Appl. 2023 Aug 30;12(1):207. doi: 10.1038/s41377-023-01241-z.

Abstract

Femtosecond vortex beams are of great scientific and practical interest because of their unique phase properties in both the longitudinal and transverse modes, enabling multi-dimensional quantum control of light fields. Until now, generating femtosecond vortex beams for applications that simultaneously require ultrashort pulse duration, high power, high vortex order, and a low cost and compact laser source has been very challenging due to the limitations of available generation methods. Here, we present a compact apparatus that generates powerful high-order femtosecond vortex pulses via astigmatic mode conversion from a mode-locked Hermite-Gaussian Yb:KGW laser oscillator in a hybrid scheme using both the translation-based off-axis pumping and the angle-based non-collinear pumping techniques. This hybrid scheme enables the generation of femtosecond vortices with a continuously tunable vortex order from the 1st up to the 30th order, which is the highest order obtained from any femtosecond vortex laser source based on a mode-locked oscillator. The average powers and pulse durations of all resulting vortex pulses are several hundred milliwatts and <650 fs, respectively. In particular, 424-fs 11th-order vortex pulses have been achieved with an average power of 1.6 W, several times more powerful than state-of-the-art oscillator-based femtosecond vortex sources.

摘要

飞秒涡旋光束因其在纵向和横向模式中独特的相位特性而具有极大的科学和实际意义,能够实现光场的多维量子控制。到目前为止,由于现有产生方法的限制,要生成同时满足超短脉冲持续时间、高功率、高涡旋阶数以及低成本和紧凑激光源等要求的飞秒涡旋光束极具挑战性。在此,我们展示了一种紧凑的装置,该装置通过基于平移的离轴泵浦和基于角度的非共线泵浦技术的混合方案,从锁模厄米 - 高斯Yb:KGW激光振荡器进行像散模式转换,从而产生强大的高阶飞秒涡旋脉冲。这种混合方案能够产生涡旋阶数从1阶到30阶连续可调的飞秒涡旋,这是从基于锁模振荡器的任何飞秒涡旋激光源获得的最高阶数。所有产生的涡旋脉冲的平均功率和脉冲持续时间分别为几百毫瓦和<650 fs。特别是,已实现了平均功率为1.6 W、脉宽为424 fs的11阶涡旋脉冲,其功率比基于振荡器的最先进飞秒涡旋源高出数倍。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57f9/10469186/39e2e1adec50/41377_2023_1241_Fig1_HTML.jpg

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